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Rapid and in-situ detection of fecal indicator bacteria in water using simple DNA extraction and portable loop-mediated isothermal amplification (LAMP) PCR methods

机译:使用简单的DNA提取和便携式环介导的等温扩增(LAMP)PCR方法快速就地检测水中的粪便指示菌

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Contamination of water by fecal matter and potential human enteric pathogens is a serious health concern. Microbiological water quality has been assessed by conventional culture-based methods of fecal indicator bacteria (FIB). Recently, molecular techniques for FIB have been introduced as alternative tools for rapid detection. However, such molecular techniques require a modern laboratory setting, expensive equipment, and skilled personnel. In this study, we developed a simple and rapid DNA extraction method based on a syringe filter without any specialized equipment. Furthermore, loop-mediated isothermal amplification (LAMP) PCR for fecal indicator bacteria (FIB) (i.e. E. coli and E. faecalis) was carried out using the DNA extracts from the syringe-filter based DNA extraction method. The efficiency of the extracted DNA from the syringe-filter based method was comparable to the results of the commercial kit method. We also tested fresh and marine-water collected directly from different locations in Singapore that were spiked with E. coli or E. faecalis. The LAMP assays combined with our DNA extraction method showed higher sensitivity and more tolerance to PCR inhibitors than that of conventional PCR methods. We further developed a portable LAMP device to conduct isothermal PCR reactions for rapid on-site measurement of FIB. As the color changes in the end point of the LAMP reaction can be observed with the naked eye, the portable LAMP device was easily operated and quick, obtaining results in 30 min. The simple, portable and user-friendly platform can be used as an initial screening for the rapid detection of the presence FIB in lower-resource settings. In conclusion, the portable LAMP device coupled with a syringe-filter based DNA extraction method enables us to detect the presence of FIB for assessing microbial water quality within 1 h without any sophisticated laboratory equipment or highly trained personnel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:粪便和潜在的人类肠道病原体污染水是严重的健康问题。微生物水质已通过基于粪便指示菌(FIB)的常规培养方法进行了评估。最近,已将FIB的分子技术引入作为快速检测的替代工具。但是,这种分子技术需要现代化的实验室环境,昂贵的设备和熟练的人员。在这项研究中,我们开发了一种基于注射器过滤器的简单,快速的DNA提取方法,无需任何专用设备。此外,使用来自基于注射器过滤器的DNA提取方法的DNA提取物,进行了粪便指示菌(FIB)(即大肠杆菌和粪肠球菌)的环介导的等温扩增(LAMP)PCR。从基于注射器过滤器的方法中提取DNA的效率与商业试剂盒方法的结果相当。我们还测试了直接从新加坡不同地区收集的掺有大肠杆菌或粪肠球菌的淡水和海水。与传统的PCR方法相比,与我们的DNA提取方法结合使用的LAMP分析显示出更高的灵敏度和对PCR抑制剂的耐受性。我们进一步开发了一种便携式LAMP设备,可以进行等温PCR反应,以快速现场测量FIB。由于可以用肉眼观察到LAMP反应终点的颜色变化,因此便携式LAMP设备操作简便,快捷,可在30分钟内获得结果。简单,便携式和用户友好的平台可用作初始筛选,以便在资源较少的情况下快速检测存在的FIB。总之,便携式LAMP设备与基于注射器过滤器的DNA提取方法相结合,使我们能够在没有任何复杂实验室设备或训练有素的人员的情况下,在1小时内检测出FIB的存在,以评估微生物的水质。 (C)2019 Elsevier Ltd.保留所有权利。

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